论文标题
石油,煤炭和其他有机物
Petroleum, coal and other organics in space
论文作者
论文摘要
未识别的红外排放(UIE)的石油和煤炭模型有时也称为身份不明的红外带(UIB),主要是基于作者的工作,包括未公开的结果。结果表明,UIE的石油和煤模型与UIE的Maon(混合芳香族脂肪族有机纳米颗粒)模型很好地融合并融合了。结果表明,诸如PAH,烷基化的PAH等各种底物的热处理以及混合的脂肪型/烯烃底物可导致与无烟煤煤的红外光谱或某些石油分数相匹配的碳质材料。因此,混合芳香族/脂肪族有机物的实验热处理(在空间条件下可能等同于通过冲击波或高能量辐射的预期处理)也可以使用以匹配UIE的进化。可以通过碳弧实现有机物中有机物的热/辐射处理的另一种方法。以这种方式加工的简单底物会产生碳烟灰和大量有机分子。富勒烯均通过中红外和光谱在空间中发现,很可能在太空中形成其他相关物种,例如内hed富烯(即带有金属,杂原子或笼子内分子的富勒烯)(即具有金属,杂原子或分子的富勒烯)。毕竟,他们的形成需要与富勒烯形成所需的条件相同的条件,前提是还可以使用金属蒸气(例如星际/室内气体)。因此,这篇综述的最后一部分是针对笼子内含锂的内膜C60衍生物的研究和表征的最新结果。
The petroleum and coal models of the unidentified infrared emissions (UIE), sometimes referred also as unidentified infrared bands (UIBs) has been reviewed mainly based on the work of the authors with the inclusion of unpublished results. It is shown that the petroleum and coal model of the UIE converges and merges quite well with the MAON (Mixed Aromatic Aliphatic Organic Nanoparticles) model of the UIE. It is shown that the thermal treatment of various substrates like PAHs, alkylated PAHs but also mixed aliphatic/olefinic substrates leads invariable to carbonaceous materials matching the infrared spectrum of anthracite coal or certain petroleum fractions. Thus, the experimental thermal processing (which under space conditions could be equivalent to the expected processing by shock waves or high energy radiation) of mixed aromatic/aliphatic organic matter can be used to match also the UIE evolution. Another way to simulate the thermal/radiation processing of organic matter in space, can be achieved through the carbon arc. Simple substrates processed in this way produce carbon soot and a plethora of organic molecules. Fullerenes are found in space both through mid-infrared and optical spectroscopy and it is very likely that other complex related species such as endohedral fullerenes (i.e. fullerenes with a metal, heteroatom or molecules inside the cage) may be formed in space. After all, their formation requires the same conditions as those needed for fullerene formation provided that also a metal vapour (e.g. interstellar/circumstellar gas) is available. The last part of this review is thus dedicated to the recent results on the study and characterization of an endohedral C60 derivative containing lithium inside the cage.